NSR Query Results
Output year order : Descending NSR database version of April 11, 2024. Search: Author = J.Dinius Found 25 matches. 1999LE02 Phys.Lett. 446B, 197 (1999) R.C.Lemmon, M.B.Tsang, W.Trautmann, R.J.Charity, J.F.Dempsey, J.Dinius, W.Dunnweber, S.Gaff, C.K.Gelbke, M.J.Huang, G.J.Kunde, W.G.Lynch, L.Manduci, R.Popescu, R.Ronningen, L.G.Sobotka, L.Weathers, D.White Direct Observation of the Inversion Flow NUCLEAR REACTIONS 154Sm(14N, X), (14N, αX), E=35, 100, 155 MeV/nucleon; measured (charged particle)γ-coin, γ-rays circular polarization; deduced sign of mean transverse momentum of non-equilibrium light charged particles. Mean field, nucleon-nucleon collision dynamics.
doi: 10.1016/S0370-2693(98)01545-7
1999PH01 Phys.Rev. C60, 054617 (1999) L.Phair, L.Beaulieu, L.G.Moretto, G.J.Wozniak, D.R.Bowman, N.Carlin, L.Celano, N.Colonna, J.D.Dinius, A.Ferrero, C.K.Gelbke, T.Glasmacher, F.Gramegna, D.O.Handzy, W.C.Hsi, M.J.Huang, I.Iori, Y.D.Kim, M.A.Lisa, W.G.Lynch, G.V.Margagliotti, P.F.Mastinu, P.M.Milazzo, C.P.Montoya, A.Moroni, G.F.Peaslee, R.Rui, C.Schwarz, M.B.Tsang, K.Tso, G.Vannini, F.Zhu Statistical Interpretation of the Correlation between Intermediate Mass Fragment Multiplicity and Transverse Energy NUCLEAR REACTIONS 197Au(129Xe, X), E=30, 40, 50, 60 MeV/nucleon; measured light charged particles, intermediate mass fragments yields, multiplicities, transverse energies. Comparison with statistical model predictions.
doi: 10.1103/PhysRevC.60.054617
1998MI18 Phys.Rev. C58, 953 (1998) P.M.Milazzo, G.Vannini, M.Azzano, D.Fontana, G.V.Margagliotti, P.F.Mastinu, R.Rui, F.Tonetto, N.Colonna, A.Botvina, M.Bruno, M.D'Agostino, M.L.Fiandri, F.Gramegna, I.Iori, A.Moroni, J.D.Dinius, S.Gaff, C.K.Gelbke, T.Glasmacher, M.J.Huang, G.J.Kunde, W.G.Lynch, L.Martin, C.P.Montoya, M.B.Tsang, H.Xi Temperature Measurement of Fragment Emitting Systems in Au + Au 35 MeV/Nucleon Collisions NUCLEAR REACTIONS 197Au(197Au, X), E=35 MeV/nucleon; measured light fragments isotopic yields; deduced excitation energy, temperature, caloric curve.
doi: 10.1103/PhysRevC.58.953
1998PR01 Phys.Rev. C57, 1305 (1998) D.Prindle, A.Elmaani, C.Hyde-Wright, W.Jiang, A.A.Sonzogni, R.Vandenbosch, D.Bowman, G.Cron, P.Danielewicz, J.Dinius, W.Hsi, W.G.Lynch, C.Montoya, G.Peaslee, C.Schwarz, M.B.Tsang, C.Williams, R.T.de Souza, D.Fox, T.Moore Impact Parameter Dependence of Light Charged Particle Production in 25A MeV 16O on Tb, Ta, and Au and 35A MeV 14N on Sm and Ta NUCLEAR REACTIONS 159Tb, 181Ta, 197Au(16O, X), E=25 MeV/nucleon; 154Sm, 181Ta(14N, X), E=35 MeV/nucleon; measured p-, d-, t-, α-spectra, multiplicities, σ(θ) vs impact parameter; deduced reaction mechanism features. Transport model calculations.
doi: 10.1103/PhysRevC.57.1305
1998XI02 Nucl.Phys. A630, 160c (1998) H.Xi, M.J.Huang, W.G.Lynch, M.B.Tsang, J.D.Dinius, S.J.Gaff, C.K.Gelbke, T.Glasmacher, G.J.Kunde, L.Martin, C.P.Montoya, S.Pratt, E.Scannapieco, P.M.Milazzo, M.Azzano, G.V.Margagliotti, R.Rui, G.Vannini, N.Colonna, L.Celano, G.Tagliente, M.D'Agostino, M.Bruno, M.L.Fiandri, F.Gramegna, A.Ferrero, I.Iori, A.Moroni, F.Petruzzelli, P.F.Mastinu, W.A.Friedman Nuclear Temperature Measurements with Helium Isotopes NUCLEAR REACTIONS 197Au(197Au, X), E=35 MeV/nucleon; Cu(Xe, X), E=30 MeV/nucleon; measured H, He isotopes σ(E, θ); deduced reaction temperature features.
doi: 10.1016/S0375-9474(97)00752-5
1997HU03 Phys.Rev.Lett. 78, 1648 (1997) M.J.Huang, H.Xi, W.G.Lynch, M.B.Tsang, J.D.Dinius, S.J.Gaff, C.K.Gelbke, T.Glasmacher, G.J.Kunde, L.Martin, C.P.Montoya, E.Scannapieco, P.M.Milazzo, M.Azzano, G.V.Margagliotti, R.Rui, G.Vannini, N.Colonna, L.Celano, G.Tagliente, M.D'Agostino, M.Bruno, M.L.Fiandri, F.Gramegna, A.Ferrero, I.Iori, A.Moroni, F.Petruzzelli, P.F.Mastinu, and the Miniball/Multics Collaboration Temperature Measurements for Central Au + Au Collisions at 35A MeV NUCLEAR REACTIONS 197Au(197Au, X), E=35 MeV/nucleon; measured relative populations of 6Li, α, 10B nuclei excited states; deduced central collisions associated breakup temperatures.
doi: 10.1103/PhysRevLett.78.1648
1997TS02 Phys.Rev. C55, R557 (1997) M.B.Tsang, C.Williams, M.J.Huang, W.G.Lynch, L.Phair, D.R.Bowman, J.Dinius, C.K.Gelbke, D.O.Handzy, W.C.Hsi, G.J.Kunde, M.A.Lisa, G.F.Peaslee, A.Botvina, M.-C.Lemaire, S.R.Souza, G.Van Buren, R.J.Charity, L.G.Sobotka, C.Schwarz, U.Lynen, J.Pochodzalla, H.Sann, W.Trautmann, D.Fox, R.T.de Souza, N.Carlin Fragment Multiplicity Dependent Charge Distributions in Heavy Ion Collisions NUCLEAR REACTIONS 197Au(84Kr, X), E=35-400 MeV/nucleon; measured intermediate mass fragment element distributions dependence on the multiplicity of detected fragments.
doi: 10.1103/PhysRevC.55.R557
1997WI06 Phys.Rev. C55, R2132 (1997); Comment Phys.Rev. C59, 550 (1999) C.Williams, W.G.Lynch, C.Schwarz, M.B.Tsang, W.C.Hsi, M.J.Huang, D.R.Bowman, J.Dinius, C.K.Gelbke, D.O.Handzy, G.J.Kunde, M.A.Lisa, G.F.Peaslee, L.Phair, A.Botvina, M.-C.Lemaire, S.R.Souza, G.Van Buren, R.J.Charity, L.G.Sobotka, U.Lynen, J.Pochodzalla, H.Sann, W.Trautmann, D.Fox, R.T.de Souza, N.Carlin Fragment Distributions for Highly Charged Systems NUCLEAR REACTIONS 197Au(Kr, X), E=35, 55, 70, 100, 200, 400 MeV/nucleon; measured fragment charge distributions, mean transverse energy < E(t) >, rotational energy; deduced radial expansion velocities. Statistical model.
doi: 10.1103/PhysRevC.55.R2132
1996BE75 Phys.Rev. C54, 2435 (1996) M.Belkacem, P.F.Mastinu, V.Latora, A.Bonasera, M.D'Agostino, M.Bruno, J.D.Dinius, M.L.Fiandri, F.Gramegna, D.O.Handzy, W.C.Hsi, M.Huang, G.V.Margagliotti, P.M.Milazzo, C.P.Montoya, G.F.Peaslee, R.Rui, C.Schwarz, G.Vannini, C.Williams Searching for the Nuclear Liquid-Gas Phase Transition in Au + Au Collisions at 35 MeV/nucleon NUCLEAR REACTIONS 197Au(197Au, X), E=35 MeV/nucleon; analyzed critical behavior signals, experimental apparatus efficiency effects. Classical molecular dynamics calculations.
doi: 10.1103/PhysRevC.54.2435
1996CO22 Phys.Rev.Lett. 77, 4508 (1996) E.W.Cornell, T.M.Hamilton, D.Fox, Y.Lou, R.T.de Souza, M.J.Huang, W.C.Hsi, C.Schwarz, C.Williams, D.R.Bowman, J.Dinius, C.K.Gelbke, D.O.Handzy, M.A.Lisa, W.G.Lynch, G.F.Peaslee, L.Phair, M.B.Tsang, G.Van Buren, R.J.Charity, L.G.Sobotka, W.A.Friedman Investigating the Evolution of Multifragmenting Systems with Fragment Emission Order NUCLEAR REACTIONS 197Au(84Kr, X), E=70 MeV/nucleon; measured Be, C fragments correlated, uncorrelated yields vs difference velocity distribution; deduced thermally decaying source cooling evidence.
doi: 10.1103/PhysRevLett.77.4508
1996DA07 Phys.Lett. 368B, 259 (1996) M.D'Agostino, P.F.Mastinu, P.M.Milazzo, M.Bruno, D.R.Bowman, P.Buttazzo, L.Celano, N.Colonna, J.D.Dinius, A.Ferrero, M.L.Fiandri, C.K.Gelbke, T.Glasmacher, F.Gramegna, D.O.Handzy, D.Horn, W.C.Hsi, M.Huang, I.Iori, G.J.Kunde, M.A.Lisa, W.G.Lynch, L.Manduci, G.V.Margagliotti, C.P.Montoya, A.Moroni, G.F.Peaslee, F.Petruzzelli, L.Phair, R.Rui, C.Schwarz, M.B.Tsang, G.Vannini, C.Williams, and the Multics/Miniball Collaboration Multifragment Production in Au + Au at 35 MeV/u NUCLEAR REACTIONS 197Au(197Au, X), E=35 MeV/nucleon; measured fragment emission velocities vs θ, Z=4-10, two-fragment correlation; deduced emission mechanism for central collisions. Many-body trajectories.
doi: 10.1016/0370-2693(95)01473-X
1996DA17 Phys.Lett. 371B, 175 (1996) M.D'Agostino, A.S.Botvina, P.M.Milazzo, M.Bruno, G.J.Kunde, D.R.Bowman, L.Celano, N.Colonna, J.D.Dinius, A.Ferrero, M.L.Fiandri, C.K.Gelbke, T.Glasmacher, F.Gramegna, D.O.Handzy, D.Horn, W.C.Hsi, M.Huang, I.Iori, M.A.Lisa, W.G.Lynch, L.Manduci, G.V.Margagliotti, P.F.Mastinu, I.N.Mishustin, C.P.Montoya, A.Moroni, G.F.Peaslee, F.Petruzzelli, L.Phair, R.Rui, C.Schwarz, M.B.Tsang, G.Vannini, C.Williams Statistical Multifragmentation in Central Au + Au Collisions at 35 MeV/u NUCLEAR REACTIONS 197Au(197Au, X), E=35 MeV/nucleon; measured fragment charge distribution, kinetic energy per nucleon vs Z, two-fragment correlation function. Statistical multi-fragmentation model analysis.
doi: 10.1016/0370-2693(96)00008-1
1996FE01 Phys.Rev. C53, R5 (1996) A.Ferrero, I.Iori, A.Moroni, F.Petruzzelli, R.Scardaoni, L.G.Moretto, D.R.Bowman, M.Bruno, P.Buttazzo, L.Celano, N.Colonna, M.D'Agostino, J.D.Dinius, M.L.Fiandri, E.Fuschini, C.K.Gelbke, T.Glasmacher, F.Gramegna, D.O.Handzy, D.Horn, W.C.Hsi, M.Huang, G.J.Kunde, M.A.Lisa, W.G.Lynch, P.F.Mastinu, P.M.Milazzo, G.V.Margagliotti, C.P.Montoya, G.F.Peaslee, L.Phair, R.Rui, C.Schwarz, M.B.Tsang, G.Vannini, C.Williams Reducibility and a New Entropic Term in Multifragment Charge Distributions NUCLEAR REACTIONS Cu, 197Au(Xe, X), E=30 MeV/nucleon; measured charge distributions vs fragment multiplicity; deduced thermal scaling, reducibility features.
doi: 10.1103/PhysRevC.53.R5
1996HA12 Phys.Rev. C53, 2273 (1996) T.M.Hamilton, E.Cornell, D.Fox, Y.Lou, R.T.de Souza, M.J.Huang, W.C.Hsi, C.Schwarz, C.Williams, D.R.Bowman, J.Dinius, C.K.Gelbke, T.Glasmacher, D.O.Handzy, M.A.Lisa, W.G.Lynch, G.F.Peaslee, L.Phair, M.B.Tsang, G.Van Buren, R.J.Charity, L.G.Sobotka, A.A.Sonzogni, D.Prindle Changing Source Characteristics During Multifragment Decay NUCLEAR REACTIONS 197Au(84Kr, X), E=35, 55, 70 MeV/nucleon; measured charged particle multiplicities, (fragment)(fragment)-correlation, fragment velocities, σ (fragment E, theta); deduced spatial-temporal extent of the emitting source, dependence on fragment velocities.
doi: 10.1103/PhysRevC.53.2273
1996LO06 Nucl.Phys. A604, 219 (1996) Y.Lou, R.T.de Souza, S.L.Chen, E.W.Cornell, B.Davin, D.Fox, T.M.Hamilton, K.Mcdonald, M.B.Tsang, T.Glasmacher, J.Dinius, C.K.Gelbke, D.O.Handzy, W.C.Hsi, M.Huang, W.G.Lynch, C.Montoya, C.Schwarz, D.Prindle, A.A.Sonzogni, R.Vandenbosch, J.L.Wile, M.Parker, D.L.Coffing Fragment Emission from Modestly Excited Nuclear Systems NUCLEAR REACTIONS 197Au(14N, X), E=100-156 MeV/nucleon; measured (fragment)(fragment) correlations, emission patterns; deduced emission time scale. Statistical decay model.
doi: 10.1016/0375-9474(96)00106-6
1996MA26 Phys.Rev.Lett. 76, 2646 (1996) P.F.Mastinu, M.Belkacem, M.D'Agostino, M.Bruno, P.M.Milazzo, G.Vannini, D.R.Bowman, N.Colonna, J.D.Dinius, A.Ferrero, M.L.Fiandri, C.K.Gelbke, T.Glasmacher, F.Gramegna, D.O.Handzy, D.Horn, W.C.Hsi, M.Huang, I.Iori, G.J.Kunde, M.A.Lisa, W.G.Lynch, G.V.Margagliotti, C.P.Montoya, A.Moroni, G.F.Peaslee, F.Petruzzelli, R.Rui, C.Schwarz, M.B.Tsang, C.Williams, V.Latora, A.Bonasera, and the Multics-Miniball Collaboration Circumstantial Evidence for Critical Behavior in Peripheral Au + Au Collisions at 35 MeV/nucleon NUCLEAR REACTIONS 197Au(197Au, X), E=35 MeV/nucleon; measured fragment charge, multiplicity distributions; deduced circumstantial evidence for critical behavior.
doi: 10.1103/PhysRevLett.76.2646
1996SO01 Phys.Rev. C53, 243 (1996) A.A.Sonzogni, A.Elmaani, C.Hyde-Wright, W.Jiang, D.Prindle, R.Vandenbosch, J.Dinius, G.Cron, D.Bowman, C.K.Gelbke, W.Hsi, W.G.Lynch, C.Montoya, G.Peaslee, C.Schwarz, M.B.Tsang, C.Williams, R.DeSouza, D.Fox, T.Moore Evaporation Residue, Fission Cross Sections, and Linear Momentum Transfer for 14N Induced Reactions from 35A to 155A MeV NUCLEAR REACTIONS 154Sm, 197Au(14N, X), (14N, F), E=35-155 MeV/nucleon; 159Tb(14N, X), (14N, F), E=35-100 MeV/nucleon; measured σ(evaporation residue θ), fission fragment σ(θ); deduced fusion σ(E). 181Ta(16O, F), E=25 MeV/nucleon; 181Ta(14N, F), E=35-100 MeV/nucleon; measured fission fragment folding angle distributions; deduced preequilibrium particle emission role.
doi: 10.1103/PhysRevC.53.243
1995BO21 Phys.Rev. C52, 818 (1995) D.R.Bowman, N.Colonna, W.A.Friedman, L.Celano, M.D'Agostino, J.D.Dinius, A.Ferrero, C.K.Gelbke, T.Glasmacher, D.O.Handzy, D.Horn, W.C.Hsi, M.Huang, I.Iori, M.A.Lisa, W.G.Lynch, G.V.Margagliotti, P.M.Milazzo, C.P.Montoya, A.Moroni, G.F.Peaslee, L.Phair, F.Petruzzelli, R.Scardaoni, C.Schwarz, M.B.Tsang, C.Williams Space-Time Characteristics of Fragment Emission in the E/A = 30 MeV 129Xe + (nat)Cu Reaction NUCLEAR REACTIONS Cu(129Xe, X), E=30 MeV/nucleon; measured intermediate mass fragment multiplicities, reduced velocity correlation functions, emission velocities; deduced fragment emission space-time characteristics. Three-body trajectory calculations, dynamical BNV code based statistical models analyses.
doi: 10.1103/PhysRevC.52.818
1995CH58 Phys.Rev. C52, 3126 (1995) R.J.Charity, L.G.Sobotka, N.J.Robertson, D.G.Sarantites, J.Dinius, C.K.Gelbke, T.Glasmacher, D.O.Handzy, W.C.Hsi, M.J.Huang, W.G.Lynch, C.P.Montoya, G.F.Peaslee, C.Schwarz, M.B.Tsang Prompt and Sequential Decay Processes in the Fragmentation of 40 MeV/Nucleon 20Ne Projectiles NUCLEAR REACTIONS 120Sn, 197Au(20Ne, X), E=40 MeV/nucleon; measured projectile breakup, p, d, t, 3,4,6He, 6,7Li velocity distribution centroids, correlation functions; deduced breakup time scale.
doi: 10.1103/PhysRevC.52.3126
1995CO21 Phys.Rev.Lett. 75, 1475 (1995) E.Cornell, T.M.Hamilton, D.Fox, Y.Lou, R.T.de Souza, M.J.Huang, W.C.Hsi, C.Schwarz, C.Williams, D.R.Bowman, J.Dinius, C.K.Gelbke, T.Glasmacher, D.O.Handzy, M.A.Lisa, W.G.Lynch, G.F.Peaslee, L.Phair, M.B.Tsang, G.Van Buren, R.J.Charity, L.G.Sobotka, W.A.Friedman Assessing the Evolutionary Nature of Multifragment Decay NUCLEAR REACTIONS 197Au(84Kr, X), E=35-70 MeV/nucleon; analyzed (fragment)(fragment) velocity correlation, velocity relationship; deduced source characteristics evolution as fragments are emitted. Statistical model.
doi: 10.1103/PhysRevLett.75.1475
1995DA23 Phys.Rev.Lett. 75, 4373 (1995) M.D'Agostino, G.J.Kunde, P.M.Milazzo, J.D.Dinius, M.Bruno, N.Colonna, M.L.Fiandri, C.K.Gelbke, T.Glasmacher, F.Gramegna, D.O.Handzy, W.C.Hsi, M.Huang, M.A.Lisa, W.G.Lynch, P.F.Mastinu, C.P.Montoya, A.Moroni, G.F.Peaslee, L.Phair, R.Rui, C.Schwarz, M.B.Tsang, G.Vannini, C.Williams Multifragmentation in E/A = 35 MeV Collisions: Evidence for a Coulomb driven breakup ( Question ) NUCLEAR REACTIONS 197Au(197Au, X), E=35 MeV/nucleon; measured fragment velocity distributions, efficiency corrected relative elemental probability distribution; deduced mean fragment multiplicities, emission mechanism.
doi: 10.1103/PhysRevLett.75.4373
1995MO07 Nucl.Phys. A583, 531c (1995) A.Moroni, D.R.Bowman, M.Bruno, P.Buttazzo, L.Celano, N.Colonna, M.D'Agostino, J.D.Dinius, A.Ferrero, M.L.Fiandri, C.K.Gelbke, T.Glasmacher, F.Gramegna, D.O.Handzy, D.Horn, W.-C.Hsi, M.Huang, I.Iori, M.Lisa, W.G.Lynch, G.V.Margagliotti, P.F.Mastinu, P.M.Milazzo, C.Montoya, G.F.Peaslee, L.Phair, F.Petruzzelli, R.Rui, R.Scardaoni, C.Schwarz, B.Tsang, G.Vannini, C.Williams Multifragment Emission Times in Xe Induced Reactions NUCLEAR REACTIONS Cu(129Xe, X), E=30, 45 MeV/nucleon; measured intermediate mass fragment multiplicities. Statistical decay model analysis.
doi: 10.1016/0375-9474(94)00715-Y
1994CH10 Phys.Lett. 323B, 113 (1994) R.J.Charity, L.G.Sobotka, G.Van Buren, F.A.Tibbals, J.Barreto, D.R.Bowman, M.Chartier, J.Dinius, D.Fox, C.K.Gelbke, D.O.Handzy, W.C.Hsi, P.F.Hua, A.S.Kirov, M.A.Lisa, W.G.Lynch, G.F.Peaslee, L.Phair, D.G.Sarantites, C.Schwarz, R.T.de Souza, M.B.Tsang, C.Williams Time Scale for Proton Emission from Highly Excited Projectiles NUCLEAR REACTIONS 197Au(24Mg, X), E=60 MeV/nucleon; measured projectile breakup light charged particle velocity distribution centroids; deduced proton emission time scale.
doi: 10.1016/0370-2693(94)90278-X
1994PE06 Phys.Rev. C49, R2271 (1994) G.F.Peaslee, M.B.Tsang, C.Schwarz, M.J.Huang, W.S.Huang, W.C.Hsi, C.Williams, W.Bauer, D.R.Bowman, M.Chartier, J.Dinius, C.K.Gelbke, T.Glasmacher, D.O.Handzy, M.A.Lisa, W.G.Lynch, C.M.Mader, L.Phair, M.-C.Lemaire, S.R.Souza, G.Van Buren, R.J.Charity, L.G.Sobotka, G.J.Kunde, U.Lynen, J.Pochodzalla, H.Sann, W.Trautmann, D.Fox, R.T.de Souza, G.Peilert, W.A.Friedman, N.Carlin Energy Dependence of Multifragmentation in 84Kr + 197Au Collisions NUCLEAR REACTIONS 197Au(84Kr, X), E=35, 55, 70, 100, 200, 400 MeV/nucleon; measured intermediate mass fragment, total charged particle multiplicities; deduced multi-fragmentation energy dependence. QMD model.
doi: 10.1103/PhysRevC.49.R2271
1992ZH08 Phys.Lett. 282B, 299 (1992) F.Zhu, W.G.Lynch, D.R.Bowman, R.T.de Souza, C.K.Gelbke, Y.D.Kim, L.Phair, M.B.Tsang, C.Williams, H.M.Xu, J.Dinius Thermalization in Nucleus-Nucleus Collisions NUCLEAR REACTIONS 197Au(36Ar, X), E=35 MeV/nucleon; measured σ(fragment θ, E) for X=10B, yields for 10B breakup into 6Li+α, 9Be+p; deduced thermalization population inversion features.
doi: 10.1016/0370-2693(92)90642-H
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